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geant4/source/geometry/management/include/G4PVPlacement.hh
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//
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// $Id: G4PVPlacement.hh,v 1.7 2002/10/14 07:42:25 gcosmo Exp $
// GEANT4 tag $Name: geant4-05-00 $
//
//
// class G4PVPlacement
//
// Class description:
//
// Class representing a single volume positioned within and relative
// to a mother volume.
// History:
// 24.07.95 P.Kent First non-stub version
// 25.07.96 P.Kent Modified interface for new `Replica' capable geometry
// 28.08.96 P.Kent Tidied + transform replaced by rotmat+vector
// 28.02.97 J.Apostolakis Added 2nd constructor with G4Transform3D of solid.
// 11.07.97 J.Apostolakis Added 3rd constructor with pMotherLogical
// 11.05.98 J.Apostolakis Added 4th constructor with G4Transform3D & pMotherLV
#ifndef G4PVPLACEMENT_HH
#define G4PVPLACEMENT_HH
#include "G4VPhysicalVolume.hh"
#include "G4Transform3D.hh"
class G4PVPlacement : public G4VPhysicalVolume
{
public: // with description
G4PVPlacement(G4RotationMatrix *pRot,
const G4ThreeVector &tlate,
const G4String &pName,
G4LogicalVolume *pLogical,
G4VPhysicalVolume *pMother,
G4bool pMany,
G4int pCopyNo);
// Initialise a single volume, positioned in a frame which is rotated by
// *pRot and traslated by tlate, relative to the coordinate system of the
// mother volume pMother.
// If pRot=0 the volume is unrotated with respect to its mother.
// The physical volume is added to the mother's logical volume.
// (The above are exactly the arguments of G4VPhysicalVolume)
// Arguments particular to G4PVPlacement:
// pMany Currently NOT used. For future use to identify if the volume
// is MANY in the GEANT 3 sense, or not.
// pCopyNo should be set to 0 for the first volume of a given type.
G4PVPlacement(const G4Transform3D &Transform3D,
const G4String &pName,
G4LogicalVolume *pLogical,
G4VPhysicalVolume *pMother,
G4bool pMany,
G4int pCopyNo);
// Additional constructor, which expects a G4Transform3D that represents
// the direct rotation and translation of the solid (NOT of the frame).
// The G4Transform3D argument should be constructed by:
// i) First rotating it to align the solid to the system of
// reference of its mother volume *pMother, and
// ii) Then placing the solid at the location Transform3D.getTranslation(),
// with respect to the origin of the system of coordinates of the
// mother volume.
// [ This is useful for the people who prefer to think in terms
// of moving objects in a given reference frame. ]
// All other arguments are the same as for the previous constructor.
G4PVPlacement(G4RotationMatrix *pRot,
const G4ThreeVector &tlate,
G4LogicalVolume *pCurrentLogical,
const G4String& pName,
G4LogicalVolume *pMotherLogical,
G4bool pMany,
G4int pCopyNo);
// A simple variation of the 1st constructor, only specifying the
// mother volume as a pointer to its logical volume instead of its
// physical volume. [ This is a very natural way of defining a physical
// volume, and is especially useful when creating subdetectors: the
// mother volumes is not placed until a later stage of the assembly
// program. ]
G4PVPlacement(const G4Transform3D &Transform3D,
G4LogicalVolume *pCurrentLogical,
const G4String& pName,
G4LogicalVolume *pMotherLogical,
G4bool pMany,
G4int pCopyNo);
// Utilises both variations above (from 2nd and 3rd constructor).
virtual ~G4PVPlacement();
// Default destructor.
virtual G4int GetCopyNo() const;
virtual void SetCopyNo(G4int CopyNo);
// Gets and sets the copy number of the volume.
virtual void Setup(G4VPhysicalVolume *pMother);
// Sets the pointer to the mother volume.
// Must not be called when geometry closed.
public: // without description
virtual G4bool IsMany() const;
virtual G4bool IsReplicated() const;
virtual G4bool IsParameterised() const;
virtual G4VPVParameterisation* GetParameterisation() const;
virtual void GetReplicationData(EAxis& axis,
G4int& nReplicas,
G4double& width,
G4double& offset,
G4bool& consuming) const;
private:
static G4RotationMatrix* NewPtrRotMatrix(const G4RotationMatrix &RotMat);
// Auxiliary function for 2nd constructor (one with G4Transform3D).
// Creates a new RotMatrix on the heap (using "new") and copies
// its argument into it.
G4PVPlacement(const G4PVPlacement&);
G4PVPlacement& operator=(const G4PVPlacement&);
// Private copy constructor and assignement operator.
private:
G4bool fmany; // flag for booleans/MANY - not used
G4bool fallocatedRotM; // flag for allocation of Rotation Matrix
G4int fcopyNo; // for identification
};
#endif